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Characterization Of Extracellular Polymeric Substances Produced By Mixed Microorganisms In Activated Sludge With Gel-permeating Chromatography, Excitation-emission Matrix Fluorescence Spectroscopy Measurement And Kinetic Modeling

机译:凝胶渗透色谱,激发-发射矩阵荧光光谱测量和动力学建模表征活性污泥中混合微生物产生的细胞外聚合物

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In this work the extracellular polymeric substances (EPS) produced by mixed microbial community in activated sludge are characterized using gel-permeating chromatography (GPC), 3-dimensional excitation-emission matrix (EEM) fluorescence spectroscopy measurement and mathematical modeling. Chromatograms of extracted EPS exhibit seven peaks, among which proteins have four peaks and polysaccharides have three peaks. Evolution of the chromatogram area indicates that the quantity of produced EPS increases significantly in the substrate utilization process. With the parallel factor analysis (PAR-AFAC) approach, two components of the polymer matrix are identified by the EEM analysis, one as EPS proteins at Ex/Em 280/340 nm and one matrix associated as fulvic-acid-like substances at 320/400 nm. The proteins and fulvic-acid-like substances in the EPS increase in the substrate utilization phase, but decrease in the endogenous phase. To have a better insight into EPS production, the kinetic modeling of EPS is performed with regard to their molecular weight distribution and chemical natures identified by GPC and EEM. In this way, the dynamics of these important microbial products are better understood.
机译:在这项工作中,使用凝胶渗透色谱法(GPC),三维激发发射矩阵(EEM)荧光光谱测量和数学建模来表征活性污泥中混合微生物群落产生的细胞外聚合物质(EPS)。提取的EPS的色谱图显示七个峰,其中蛋白质具有四个峰,而多糖具有三个峰。色谱图区域的演变表明,在底物利用过程中,产生的EPS量显着增加。使用并行因子分析(PAR-AFAC)方法,通过EEM分析可识别聚合物基质的两种成分,一种在Ex / Em 280/340 nm处为EPS蛋白,而另一种在320处为黄腐酸样物质结合/ 400海里EPS中的蛋白质和富里酸样物质在底物利用阶段增加,而在内源阶段减少。为了更好地了解EPS的生产,对EPS的分子量分布和由GPC和EEM确定的化学性质进行了动力学建模。这样,可以更好地了解这些重要微生物产品的动力学。

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